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Current-mediated suppression of hydrogen evolution reaction in determination of Zn-metal Coulombic efficiency
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Title
Current-mediated suppression of hydrogen evolution reaction in determination of Zn-metal Coulombic efficiency
Issued Date
2024-10
Citation
Lee, Mingyu. (2024-10). Current-mediated suppression of hydrogen evolution reaction in determination of Zn-metal Coulombic efficiency. Current Opinion in Electrochemistry, 47. doi: 10.1016/j.coelec.2024.101571
Type
Article
Author Keywords
Aqueous Zn batteriesCoulombic efficiencyHydrogen evolution reactionZn depositionReversibility of deposited Zn
ISSN
2451-9103
Abstract
Coulombic efficiency (CE) is a crucial metric in battery research, particularly for aqueous Zinc (Zn)-metal batteries. Nonetheless, the accurate determination of Zn CE is complicated due to a lack of awareness about charge loss triggered by the hydrogen evolution reaction (HER) and non-standardized testing conditions. This study reveals the governing factors affecting the Zn CE measurement under different testing conditions, such as applied current density, Zn-plating capacity, and half-cell platforms. Through literature and experimental studies, it is evident that the Zn CE inherently increases with higher current densities and capacities. When decoupling the actual potentials of HER and Zn deposition, HER-triggered parasitic reactions can be self-suppressed owing to greater overpotential for HER than for Zn-plating at higher current densities. A consistent trend was observed when using different Zn salts and current collectors. This awareness can help standardize CE measuring protocols for validating novel concepts and materials. © 2024 Elsevier B.V.
URI
http://hdl.handle.net/20.500.11750/57412
DOI
10.1016/j.coelec.2024.101571
Publisher
Elsevier
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김찬연
Kim, Chanyeon김찬연

Department of Energy Science and Engineering

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